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Alignment of the CMS muon system with cosmic-ray and beam-halo muons

Authors :
UCL - SST/IRMP - Institut de recherche en mathématique et physique
UCL - SC/SC - Faculté des sciences
UCL - SC/PHYS - Département de physique
Basegmez, Suzan
Bruno, Giacomo
Caudron, Julien
Delaere, Christophe
Demin, Pavel
Favart, Denis
Giammanco, Andrea
Grégoire, Ghislain
Lemaitre, Vincent
Militaru, Otilia
Ovyn, Séverine
Piotrzkowski, Krzysztof
Quertenmont, Loic
Schul, Nicolas
UCL - SST/IRMP - Institut de recherche en mathématique et physique
UCL - SC/SC - Faculté des sciences
UCL - SC/PHYS - Département de physique
Basegmez, Suzan
Bruno, Giacomo
Caudron, Julien
Delaere, Christophe
Demin, Pavel
Favart, Denis
Giammanco, Andrea
Grégoire, Ghislain
Lemaitre, Vincent
Militaru, Otilia
Ovyn, Séverine
Piotrzkowski, Krzysztof
Quertenmont, Loic
Schul, Nicolas
Source :
Journal of Instrumentation, Vol. 5, p. T03020 (2010)
Publication Year :
2010

Abstract

The CMS muon system has been aligned using cosmic-ray muons collected in 2008 and beam-halo muons from the 2008 LHC circulating beam tests. After alignment, the resolution of the most sensitive coordinate is 80 microns for the relative positions of superlayers in the same barrel chamber and 270 microns for the relative positions of endcap chambers in the same ring structure. The resolution on the position of the central barrel chambers relative to the tracker is comprised between two extreme estimates, 200 and 700 microns, provided by two complementary studies. With minor modifications, the alignment procedures can be applied using muons from LHC collisions, leading to additional significant improvements.

Details

Database :
OAIster
Journal :
Journal of Instrumentation, Vol. 5, p. T03020 (2010)
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1130543022
Document Type :
Electronic Resource